文章摘要
班美静 1,2,满 燕 1 ,潘立刚 1,2.核酸适配体生物传感技术在沙门氏菌定量检测中的应用[J].广东农业科学,2019,46(10):114-122
查看全文    HTML 核酸适配体生物传感技术在沙门氏菌定量检测中的应用
Application of Aptamer Biosensor Technology inthe Quantitative Detection of Salmonella
  
DOI:10.16768/j.issn.1004-874X.2019.10.018
中文关键词: 沙门氏菌、食源性致病菌  核酸适配体  生物传感  检测
英文关键词: Salmonella  foodborne pathogen  SELEX  biosensors  detection
基金项目:国家自然科学基金(3180100031)
作者单位
班美静 1,2,满 燕 1 ,潘立刚 1,2 1. 北京市农林科学院 / 北京农业质量标准与检测技术研究中心 / 农业部农产品质量安全风险评估实验室 ( 北京 )/ 农产品产地环境监测北京市重点实验室北京 100097 2. 北京农学院食品科学与工程学院北京 102206 
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中文摘要:
      沙门氏菌是一种重要的人畜共患病病原菌,在世界各地的食物中毒中,该菌引起的中毒事件数量 位居前列。目前,基于抗原 / 抗体、核酸适配体、细胞等传感元件的生物传感技术已被广泛应用于沙门氏菌的定 量检测中。其中,核酸适配体是一种短的核酸序列,具有特异性强、亲和力高、合成速度快、重现性好、修饰 方便等优点。核酸适配体的这些优点可能会取代抗体,成为分析领域中的潜在识别探针。因此,核酸适配体生 物传感技术在沙门氏菌定量检测中具有独特优势。主要综述了核酸适配体生物传感技术在沙门氏菌定量检测中 的应用研究。首先对沙门氏菌及其常用检测方法进行简单介绍,其次介绍沙门氏菌核酸适配体的 SELEX 筛选方法, 重点对基于核酸适配体的比色、荧光、表面增强拉曼散射(SERS)、电化学等生物传感技术在沙门氏菌定量检 测中的应用进行详细论述,最后对核酸适配体生物传感技术应用于沙门氏菌定量检测的发展前景进行展望。
英文摘要:
      Salmonella is an important zoonotic pathogen, which leads to the highest number of food poisoning cases in the world. At present, biosensors based on antigen/antibody, aptamer, cell and other sensing elements have been widely used in the quantitative detection of Salmonella. Among them, aptamers are short nucleotide sequences which have the advantages of strong specificity, high affinity, fast synthesis, good reproducibility and convenient modification. Those advantages make it possible to be a potential for use as a recognition probe to replace antibody in the diagnostic field. Therefore, aptasensors have unique advantages in the quantitative detection of Salmonella. This paper focuses on the application of aptasensors in Salmonella detection. First, salmonella and their common detection methods were summarized. Second, Salmonella aptamer screening by SELEX was introduced. Then the application of aptasensors based on colorimetry, fluorescence, surface-enhanced Raman scattering (SERS) and electrochemistry to detect salmonella were reviewed in detail. Finally, the development in the application of aptasensors for the quantitative detection of salmonella were previewed.
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